Common Mode Chokes

Image Part Number Description / PDF Quantity Rfq
B82721K2501N001

B82721K2501N001

TDK EPCOS

CMC 18MH 500MA 2LN TH

3

B82791H2152N010

B82791H2152N010

TDK EPCOS

RING CORE CHOKE 2X100UH 1.5A

591

B82747S4203A020

B82747S4203A020

TDK EPCOS

CMC 1.3MH 20A 3LN TH

0

B82734W2462B030

B82734W2462B030

TDK EPCOS

CMC 3.3MH 4.6A 2LN TH

800

B82731M2501A030

B82731M2501A030

TDK EPCOS

CMC 47MH 500MA 2LN TH

2

B82747E6253A040

B82747E6253A040

TDK EPCOS

COMMON MODE CHOKE 1MH 25A 3LN TH

96

B82721J2122N020

B82721J2122N020

TDK EPCOS

CMC 6.8MH 1.2A 2LN TH

0

B82726S6123N020

B82726S6123N020

TDK EPCOS

CMC 3.3MH 12A 2LN TH

60

B82747S4423N020

B82747S4423N020

TDK EPCOS

CMC 1.5MH 42A 3LN TH

24

B82724A2142N001

B82724A2142N001

TDK EPCOS

CMC 27MH 1.4A 2LN TH

545

B82725S2103N003

B82725S2103N003

TDK EPCOS

CMC 2.8MH 10A 2LN TH

437

B82723J2102N001

B82723J2102N001

TDK EPCOS

COMMON MODE CHOKE 27MH 1A 2LN TH

358

B82732R2701B030

B82732R2701B030

TDK EPCOS

CMC 39MH 700MA 2LN TH

69

B82791H2901N020

B82791H2901N020

TDK EPCOS

CMC 4.7MH 900MA 2LN TH

0

B82790C0502N201

B82790C0502N201

TDK EPCOS

CMC 5UH 1A 2LN SMD AEC-Q200

1751

B82791H2501N001

B82791H2501N001

TDK EPCOS

CMC 10MH 500MA 2LN TH

0

B82730U3751A020

B82730U3751A020

TDK EPCOS

CMC 3.9MH 750MA 2LN TH

546

B82733F2701B001

B82733F2701B001

TDK EPCOS

CMC 100MH 700MA 2LN TH

52

B82791H2351N001

B82791H2351N001

TDK EPCOS

CMC 22MH 350MA 2LN TH

599

B82721K2401N025

B82721K2401N025

TDK EPCOS

COMMON MODE CHOKE 39MH 0.4A

0

Common Mode Chokes

1. Overview

Common Mode Chokes (CMCs) are passive electronic components designed to suppress electromagnetic interference (EMI) by blocking high-frequency noise currents while allowing DC or low-frequency signals to pass. They play a critical role in ensuring electromagnetic compatibility (EMC) in modern electronic systems, particularly in power supplies, communication interfaces, and industrial equipment.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
High-Frequency CMCsOptimized for >1 MHz noise suppressionSwitching power supplies, USB interfaces
Low-Frequency CMCsEffective in 10 kHz 1 MHz rangeMotor drives, industrial sensors
Multi-Winding CMCsMultiple coils for differential/balanced circuitsTelecom transformers, Ethernet interfaces
SMD CMCsSurface-mount design for compact PCB integrationSmartphones, IoT devices
High-Current CMCsRated for >10A continuous operationEV charging stations, solar inverters

3. Structure and Composition

A typical CMC consists of: - Ferrite Core: Made of manganese-zinc (MnZn) or nickel-zinc (NiZn) materials for high permeability - Dual Windings: Symmetrically wound coils with equal turns to maintain signal integrity - Encapsulation: Flame-retardant epoxy resin for mechanical protection - Termination: Tin-plated copper leads or SMD pads

4. Key Technical Specifications

ParameterDescriptionImportance
Inductance (H)100 @ 100 MHz typicalDetermines noise suppression effectiveness
Rated Current (A)0.1 50 A DCPrevents core saturation under load
Impedance Range100 MHz 1 GHzDefines operational frequency bandwidth
DC Resistance ( )0.01 5 Affects power efficiency
Operating Temp ( C)-55 to +150 CEnsures reliability in harsh environments

5. Application Fields

Major industries include: - Consumer Electronics: Laptop chargers, smart TVs - Industrial Automation: PLC controllers, CNC machines - Medical Equipment: MRI scanners, patient monitors - Renewable Energy: Wind turbine inverters, battery storage systems - Telecommunications: 5G base stations, fiber optic transceivers

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
TDK CorporationACT1210 Series1200 @ 100 MHz, 1.5 A rating
SumidaCDRH3D28 SeriesHigh saturation resistance for EV chargers
Coilcraft114000C SeriesAEC-Q200 qualified for automotive applications
W rth Elektronik744210 SeriesCompact SMD design for 10GbE interfaces

7. Selection Guidelines

Key considerations: 1. Match impedance curve with target noise frequency 2. Derate current capacity by 20% for safety margins 3. Choose SMD variants for automated PCB assembly 4. Verify temperature ratings for industrial applications 5. Prioritize AEC-Q qualified parts for automotive use

8. Industry Development Trends

Current trends include: - Miniaturization through advanced nanocrystalline cores - Integration with TVS diodes for combined EMI/surge protection - Development of 1000+ Amp CMCs for data center power systems - Adoption of RoHS-compliant materials - Implementation of embedded thermal sensors for smart monitoring

Application Case: A server power supply uses TDK ACT1210-600M CMC to suppress 150 MHz switching noise, achieving 40 dB reduction in conducted emissions.

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